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Landfill Fire Threatens Nuclear Waste Site Outside St. Louis

Flares at the Bridgeton Landfill outside St. Louis burn off noxious fumes, including those generated by an underground fire that's been burning since 2010. The "fire" is really a high-temperature chemical reaction that consumes the waste below the landfill's surface. Véronique LaCapra/St. Louis Public Radio

Image: Flares at the Bridgeton Landfill outside St. Louis burn off noxious fumes, including those generated by an underground fire that's been burning since 2010. The "fire" is really a high-temperature chemical reaction that consumes the waste below the landfill's surface. Véronique LaCapra/St. Louis Public Radio

npr.org - November 3rd, 2015 - Veronique Lacapra

Imagine you are a parent, and that out of the blue, you get a letter from your child's school telling you not to worry — that they're ready to evacuate or shelter in place if an underground fire at a nearby landfill reaches radioactive waste on the same property.

That's pretty much what happened recently in suburban St. Louis.

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Materials on Radioactivity in Gas and Gas Drilling Waste

submitted by Margery Schab

Click on the link below for a list of resources: Materials on Radioactivity in Gas and Gas Drilling Waste

http://treichlerlawoffice.com/radiation/index.html

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Fukushima Disaster Still A Global Nightmare

      

“The models that predicted the arrival of radioactive seawater stated that the seawater could come anytime from late March or early April to the end of year . . ."  Photo: KAI VETTER

ecowatch.com - by Harvey Wasserman - June 3, 2014

The corporate media silence on Fukushima has been deafening . . .

Ever more radioactive water continues to pour into the Pacific. . .

Hundreds more tons are backed up on site, with Tepco apologists advocating they be dumped directly into the ocean without decontamination.

(READ COMPLETE ARTICLE)

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How Rising Seas Could Sink Nuclear Plants On The East Coast

      

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Radionuclides in Fracking Wastewater: Managing a Toxic Blend

A lined impoundment receives waste at a fracking site in Dimock, Pennsylvania.  J. Henry Fair

Environmental Health Perspectives (EHP)
ehp.niehs.nih.gov - Valerie J. Brown - February 1, 2014

Naturally occurring radionuclides are widely distributed in the earth’s crust, so it’s no surprise that mineral and hydrocarbon extraction processes, conventional and unconventional alike, often produce some radioactive waste.1 Radioactive drilling waste is a form of TENORM (short for “technologically enhanced naturally occurring radioactive material”)—that is, naturally occurring radioactive material (NORM) that has been concentrated or otherwise made more available for human exposure through anthropogenic means.2 Both the rapidity and the extent of the U.S. natural gas drilling boom have brought heightened scrutiny to the issues of radioactive exposure and waste management.

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FUKUSHIMA DISASTER: IMPACTS AND CONTINUING THREATS

Physicians for Social Responsibility (PSR) Report, 2013

More than two years since the nuclear disaster began at the Fukushima Daiichi reactors, its impact is massive and widespread. It will be decades before the full scope of the impacts of this ongoing disaster is fully understood but significant health, economic, environmental and social consequences are already evident and quantifiable. Furthermore, independent expert analyses has documented extraordinary industry influence on government regulators, especially widespread collusion among the Japanese government, Tokyo Electric Power Company (TEPCO), the owner/operator of Fukushima, and the nuclear/utility industry. The Fukushima disaster leaves Japan with massive economic loss, radiation exposure to children and others, and a nation grappling with an uncertain nuclear future.

FULL REPORT HERE

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Atomic Bomb Nearly Exploded over North Carolina in 1961

Published September 21, 2013, FoxNews.com

The U.S. Air Force nearly detonated an atomic bomb over North Carolina in 1961 that would have been 260 times more powerful than the device that destroyed Hiroshima, according to a declassified report published Friday in The Guardian.

The 1969 document, obtained by investigative journalist Eric Schlosser under the Freedom of Information Act, details the Jan. 23, 1961, B-52 crash near Goldsboro, North Carolina, that saw two Mark 39 hydrogen bombs break up in mid-air.

FULL STORY HERE

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Molecule May Aid Nuclear Waste Clean-Up

Molecules cause radioactive waste to cluster, facilitating cleanup // Source: kokokuxhito.info

submitted by Luis Kun

Homeland Security News Wire - March 14, 2012

Scientists have produced a previously unseen uranium molecule in a move that could improve clean-up of nuclear waste.

The distinctive butterfly-shaped compound is similar to radioactive molecules that scientists had proposed to be key components of nuclear waste. These molecules, however, were thought too unstable to exist for long.

A University of Edinburgh release reports that researchers have shown the compound to be robust, which implies that molecules with a similar structure may be present in radioactive waste.

University of Edinburgh scientists, who carried out the study, say their findings suggest the molecule may play a role in forming clusters of radioactive material in waste.

These are difficult to separate during clean-up. Improving treatment processes for nuclear waste, including targeting this type of molecule, could help the nuclear industry move towards cleaner power generation.

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New NRC Hazard Analysis Earthquake Study Released

submitted by Kay Goss

                 

US NRC study released today on "New Seismic Model Will Refine Hazard Analysis at U.S. Nuclear Plants" and performs studies at many central and eastern U.S. susceptible locations. The Central and Eastern United States Seismic Source Characterization for Nuclear Facilities (CEUS SSC) Project was conducted from April 2008 to December 2011 to develop a new, regional seismic source model for use in conducting and reviewing probabilistic seismic hazard analyses (PSHAs) for nuclear facilities in the CEUS. PSHA is a method for assessing site-specific seismic hazard that includes getting the best estimate of ground motions and a transparent quantitative accounting of uncertainty. The results of PSHA are used in seismic design and in calculating seismic risk. 

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Research - Radioactive Contamination

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